948
Views
67
CrossRef citations to date
0
Altmetric
Articles

A covert attention P300-based brain–computer interface: Geospell

, , , , , , & show all
Pages 538-551 | Received 30 May 2011, Accepted 19 Jan 2012, Published online: 29 Mar 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Quentin Barthélemy, Sylvain Chevallier, Raphaëlle Bertrand-Lalo & Pierre Clisson. (2023) End-to-end P300 BCI using Bayesian accumulation of Riemannian probabilities. Brain-Computer Interfaces 10:1, pages 50-61.
Read now
Fırat Orhanbulucu & Fatma Latifoğlu. (2022) Detection of amyotrophic lateral sclerosis disease from event-related potentials using variational mode decomposition method. Computer Methods in Biomechanics and Biomedical Engineering 25:8, pages 840-851.
Read now
Jane E. Huggins, Ramses E. Alcaide-Aguirre & Katya Hill. (2016) Effects of text generation on P300 brain-computer interface performance. Brain-Computer Interfaces 3:2, pages 112-120.
Read now

Articles from other publishers (63)

A. Pronina, R. Grigoryan, A. Makarova & A. Kaplan. (2024) Spatial Attention Effects on P300 BCI Performance: ERP and Eye-Tracking Study. Moscow University Biological Sciences Bulletin 78:4, pages 255-262.
Crossref
G. S. Velikoborets, Z. V. Nagornova & N. V. Shemyakina. (2024) BCI-Speller’s Data and Approaches as the Basis for Cognitive BCI Applications (from Communication to Creation). Human Physiology 49:S1, pages S133-S146.
Crossref
Irina Dolzhikova, Berdakh Abibullaev & Amin Zollanvari. (2023) A Jackknife-Inspired Deep Learning Approach to Subject-Independent Classification of EEG. Pattern Recognition Letters 176, pages 28-33.
Crossref
Stefania Guareschi, Maddalena Ravasi, Danila Baldessari, Silvia Pozzi, Tiziana Zaffino, Mario Melazzini & Anna Ambrosini. (2023) The positive impact on translational research of Fondazione italiana di ricerca per la Sclerosi Laterale Amiotrofica (AriSLA), a non-profit foundation focused on amyotrophic lateral sclerosis. Convergence of ex-ante evaluation and ex-post outcomes when goals are set upfront. Frontiers in Research Metrics and Analytics 8.
Crossref
Zhenis Otarbay, Merey Orazaly, Yerkegul Assaiyn, Sanzhar Chagirov, Sanzhar Pernebayev & Amir Tleuzhan. (2023) Deep Transformer Network and CNN Model with About 200k Parameters to Classify P300 EEG Signal. Deep Transformer Network and CNN Model with About 200k Parameters to Classify P300 EEG Signal.
Vladislav Mun & Berdakh Abibullaev. (2023) Explainable Deep Learning for Brain-Computer Interfaces through Layerwise Relevance Propagation. Explainable Deep Learning for Brain-Computer Interfaces through Layerwise Relevance Propagation.
Kwang Suk ParkKwang Suk Park. 2023. Humans and Electricity. Humans and Electricity 223 248 .
Berdakh Abibullaev, Kassymzhomart Kunanbayev & Amin Zollanvari. (2022) Subject-Independent Classification of P300 Event-Related Potentials Using a Small Number of Training Subjects. IEEE Transactions on Human-Machine Systems 52:5, pages 843-854.
Crossref
Guijun Chen, Xueying Zhang, Jing Zhang, Fenglian Li & Shufei Duan. (2022) A novel brain-computer interface based on audio-assisted visual evoked EEG and spatial-temporal attention CNN. Frontiers in Neurorobotics 16.
Crossref
IP Ganin & AYa Kaplan. (2022) Study of the human brain potentials variability effects in P300 based brain–computer interface. Bulletin of Russian State Medical University:2022(3).
Crossref
Yipeng Du & Jian Liu. (2022) IENet: a robust convolutional neural network for EEG based brain-computer interfaces. Journal of Neural Engineering 19:3, pages 036031.
Crossref
Berdakh Abibullaev & Amin Zollanvari. (2022) A Systematic Deep Learning Model Selection for P300-Based Brain–Computer Interfaces. IEEE Transactions on Systems, Man, and Cybernetics: Systems 52:5, pages 2744-2756.
Crossref
Ajay Kumar Maddirala & Kalyana C. Veluvolu. (2022) ICA With CWT and k -means for Eye-Blink Artifact Removal From Fewer Channel EEG . IEEE Transactions on Neural Systems and Rehabilitation Engineering 30, pages 1361-1373.
Crossref
Cecilia Salvatore, Davide Valeriani, Veronica Piccialli & Luigi Bianchi. (2022) Optimized Collaborative Brain-Computer Interfaces for Enhancing Face Recognition. IEEE Transactions on Neural Systems and Rehabilitation Engineering 30, pages 1223-1232.
Crossref
Josefina Gutierrez-Martinez, Jorge A. Mercado-Gutierrez, Blanca E. Carvajal-Gámez, Jorge L. Rosas-Trigueros & Adrian E. Contreras-Martinez. (2021) Artificial Intelligence Algorithms in Visual Evoked Potential-Based Brain-Computer Interfaces for Motor Rehabilitation Applications: Systematic Review and Future Directions. Frontiers in Human Neuroscience 15.
Crossref
S. Kundu & S. Ari. (2021) Brain-Computer Interface Speller System for Alternative Communication: A Review. IRBM.
Crossref
Thomas G. Simpson & Karen Rafferty. (2021) Investigating the P300 Response as a Marker of Working Memory in Virtual Training Environments. IEEE Transactions on Human-Machine Systems 51:3, pages 265-277.
Crossref
Álvaro Fernández-Rodríguez, María Teresa Medina-Juliá, Francisco Velasco-Álvarez & Ricardo Ron-Angevin. (2021) Different effects of using pictures as stimuli in a P300 brain-computer interface under rapid serial visual presentation or row-column paradigm. Medical & Biological Engineering & Computing 59:4, pages 869-881.
Crossref
Lu Wang, Zhenhao Zhang, Dan Han, Zhijun Zhang, Zhifang Liu & Wei Liu. (2020) Single stimulus location for two inputs: A combined brain–computer interface based on Steady‐State Visual Evoked Potential (SSVEP). European Journal of Neuroscience 53:3, pages 861-875.
Crossref
Ricardo Ron-Angevin, M. Teresa Medina-Juliá, Álvaro Fernández-Rodríguez, Francisco Velasco-Álvarez, Jean-Marc Andre, Veronique Lespinet-Najib & Liliana Garcia. (2021) Performance Analysis With Different Types of Visual Stimuli in a BCI-Based Speller Under an RSVP Paradigm. Frontiers in Computational Neuroscience 14.
Crossref
Zhen Zhang, Xiaoyan Yu, Xianwei Rong & Makoto Iwata. (2021) Spatial-Temporal Neural Network for P300 Detection. IEEE Access 9, pages 163441-163455.
Crossref
Susan Aliakbaryhosseinabadi, Dario Farina & Natalie Mrachacz-Kersting. (2020) Real-time neurofeedback is effective in reducing diversion of attention from a motor task in healthy individuals and patients with amyotrophic lateral sclerosis. Journal of Neural Engineering 17:3, pages 036017.
Crossref
Farhan Masood, Muzammal Hayat, Tasawar Murtaza & Abdullah Irfan. (2020) A Review of Brain Computer Interface Spellers. A Review of Brain Computer Interface Spellers.
Jobin T. Philip & S. Thomas George. (2019) Visual P300 Mind-Speller Brain-Computer Interfaces: A Walk Through the Recent Developments With Special Focus on Classification Algorithms. Clinical EEG and Neuroscience 51:1, pages 19-33.
Crossref
Reza Inanlou, Mehdi Safarpour & Olli Silven. (2020) Arithmetic Tracking Adaptive SAR ADC for Signals With Low-Activity Periods. IEEE Access 8, pages 211621-211629.
Crossref
Nannan Zhang, Zongtan Zhou, Yadong Liu, Erwei Yin, Jun Jiang & Dewen Hu. (2019) A Novel Single-Character Visual BCI Paradigm With Multiple Active Cognitive Tasks. IEEE Transactions on Biomedical Engineering 66:11, pages 3119-3128.
Crossref
Luigi Bianchi, Francesco Gambardella, Chiara Liti & Veronica Piccialli. (2019) Group study via collaborative BCI. Group study via collaborative BCI.
R. Ron-Angevin, L. Garcia, Á. Fernández-Rodríguez, J. Saracco, J. M. André & V. Lespinet-Najib. (2019) Impact of Speller Size on a Visual P300 Brain-Computer Interface (BCI) System under Two Conditions of Constraint for Eye Movement. Computational Intelligence and Neuroscience 2019, pages 1-16.
Crossref
Fabio Babiloni. 2019. Human Mental Workload: Models and Applications. Human Mental Workload: Models and Applications 3 19 .
Angela Riccio, Francesca Schettini, Luca Simione, Alessia Pizzimenti, Maurizio Inghilleri, Marta Olivetti-Belardinelli, Donatella Mattia & Febo Cincotti. (2018) On the Relationship Between Attention Processing and P300-Based Brain Computer Interface Control in Amyotrophic Lateral Sclerosis. Frontiers in Human Neuroscience 12.
Crossref
Alessandro Marassi, Riccardo Budai & Luca Chittaro. (2018) A P300 auditory brain-computer interface based on mental repetition. Biomedical Physics & Engineering Express 4:3, pages 035040.
Crossref
Aya Rezeika, Mihaly Benda, Piotr Stawicki, Felix Gembler, Abdul Saboor & Ivan Volosyak. (2018) Brain–Computer Interface Spellers: A Review. Brain Sciences 8:4, pages 57.
Crossref
Zhimin Lin, Chi Zhang, Ying Zeng, Li Tong & Bin Yan. (2018) A novel P300 BCI speller based on the Triple RSVP paradigm. Scientific Reports 8:1.
Crossref
D.J. McFarland & J.R. Wolpaw. (2017) EEG-based brain–computer interfaces. Current Opinion in Biomedical Engineering 4, pages 194-200.
Crossref
David Achanccaray, Christian Flores, Christian Fonseca & Javier Andreu-Perez. (2017) A P300-based brain computer interface for smart home interaction through an ANFIS ensemble. A P300-based brain computer interface for smart home interaction through an ANFIS ensemble.
Mikhail A. Lebedev & Miguel A. L. Nicolelis. (2017) Brain-Machine Interfaces: From Basic Science to Neuroprostheses and Neurorehabilitation. Physiological Reviews 97:2, pages 767-837.
Crossref
Sadaf Iqbal, Baqar A. Rizvi, P. P. Muhammed Shanir, Yusuf U. Khan & Omar Farooq. (2017) Detecting P300 potential for speller BCI. Detecting P300 potential for speller BCI.
Md Wasiur Rahman & Marina Gavrilova. 2017. Transactions on Computational Science XXX. Transactions on Computational Science XXX 73 91 .
Minpeng Xu, Yijun Wang, Masaki Nakanishi, Yu-Te Wang, Hongzhi Qi, Tzyy-Ping Jung & Dong Ming. (2016) Fast detection of covert visuospatial attention using hybrid N2pc and SSVEP features. Journal of Neural Engineering 13:6, pages 066003.
Crossref
Sijie Zhou, Long Chen, Jing Jin, Yu Zhang & Xingyu Wang. (2016) Exploring motion visual-evoked potentials for multi-objective gaze-independent brain-computer interfaces. Exploring motion visual-evoked potentials for multi-objective gaze-independent brain-computer interfaces.
Pietro Aricò, Gianluca Borghini, Gianluca Di Flumeri, Alfredo Colosimo, Stefano Bonelli, Alessia Golfetti, Simone Pozzi, Jean-Paul Imbert, Géraud Granger, Raïlane Benhacene & Fabio Babiloni. (2016) Adaptive Automation Triggered by EEG-Based Mental Workload Index: A Passive Brain-Computer Interface Application in Realistic Air Traffic Control Environment. Frontiers in Human Neuroscience 10.
Crossref
Md Wasiur Rahman & Marina Gavrilova. (2016) Overt Mental Stimuli of Brain Signal for Person Identification. Overt Mental Stimuli of Brain Signal for Person Identification.
Sijie Zhou, Long Chen, Yu Zhang, Jing Jin & Xingyu Wang. (2016) Exploring (C)overt attention for multi-objective gaze-independent BCIs, visual angle not exceeding 1 degree. Exploring (C)overt attention for multi-objective gaze-independent BCIs, visual angle not exceeding 1 degree.
M.R. Hohmann, T. Fomina, V. Jayaram, N. Widmann, C. Förster, J. Just, M. Synofzik, B. Schölkopf, L. Schöls & M. Grosse-Wentrup. 2016. Brain-Computer Interfaces: Lab Experiments to Real-World Applications. Brain-Computer Interfaces: Lab Experiments to Real-World Applications 221 239 .
Qasem T. Obeidat, Tom A. Campbell & Jun Kong. (2015) Introducing the Edges Paradigm: A P300 Brain–Computer Interface for Spelling Written Words. IEEE Transactions on Human-Machine Systems 45:6, pages 727-738.
Crossref
Han-Jeong Hwang, Valeria Y. Ferreria, Daniel Ulrich, Tayfun Kilic, Xenofon Chatziliadis, Benjamin Blankertz & Matthias Treder. (2015) A Gaze Independent Brain-Computer Interface Based on Visual Stimulation through Closed Eyelids. Scientific Reports 5:1.
Crossref
J. Powers, Kateryna Bieliaieva, Shuohao Wu & Chang Nam. (2015) The Human Factors and Ergonomics of P300-Based Brain-Computer Interfaces. Brain Sciences 5:3, pages 318-356.
Crossref
G A Ceballos & L F Hernández. (2015) Non-target adjacent stimuli classification improves performance of classical ERP-based brain computer interface. Journal of Neural Engineering 12:2, pages 026009.
Crossref
Xingwei An, Johannes Höhne, Dong Ming & Benjamin Blankertz. (2014) Exploring Combinations of Auditory and Visual Stimuli for Gaze-Independent Brain-Computer Interfaces. PLoS ONE 9:10, pages e111070.
Crossref
Gerard M. Loughnane, Emma Meade, Richard B. Reilly & Edmund C. Lalor. (2014) Towards a gaze-independent hybrid-BCI based on SSVEPs, alpha-band modulations and the P300. Towards a gaze-independent hybrid-BCI based on SSVEPs, alpha-band modulations and the P300.
P Aricò, F Aloise, F Schettini, S Salinari, D Mattia & F Cincotti. (2014) Influence of P300 latency jitter on event related potential-based brain–computer interface performance. Journal of Neural Engineering 11:3, pages 035008.
Crossref
David E Thompson, Lucia R Quitadamo, Luca Mainardi, Khalil ur Rehman Laghari, Shangkai Gao, Pieter-Jan Kindermans, John D Simeral, Reza Fazel-Rezai, Matteo Matteucci, Tiago H Falk, Luigi Bianchi, Cynthia A Chestek & Jane E Huggins. (2014) Performance measurement for brain–computer or brain–machine interfaces: a tutorial. Journal of Neural Engineering 11:3, pages 035001.
Crossref
Kouji Takano, Hiroki Ora, Kensuke Sekihara, Sunao Iwaki & Kenji Kansaku. (2014) Coherent Activity in Bilateral Parieto-Occipital Cortices during P300-BCI Operation. Frontiers in Neurology 5.
Crossref
Yaming Xu & Yoshikazu Nakajima. (2013) A Two-Level Predictive Event-Related Potential-Based Brain–Computer Interface. IEEE Transactions on Biomedical Engineering 60:10, pages 2839-2847.
Crossref
Fabio Aloise, Pietro Aricò, Francesca Schettini, Serenella Salinari, Donatella Mattia & Febo Cincotti. (2013) Asynchronous gaze-independent event-related potential-based brain–computer interface. Artificial Intelligence in Medicine 59:2, pages 61-69.
Crossref
Adrien Combaz, Camille Chatelle, Arne Robben, Gertie Vanhoof, Ann Goeleven, Vincent Thijs, Marc M. Van Hulle & Steven Laureys. (2013) A Comparison of Two Spelling Brain-Computer Interfaces Based on Visual P3 and SSVEP in Locked-In Syndrome. PLoS ONE 8:9, pages e73691.
Crossref
Adnan Vilic, Troels W. Kjaer, Carsten E. Thomsen, S. Puthusserypady & Helge B. D. Sorensen. (2013) DTU BCI speller: An SSVEP-based spelling system with dictionary support. DTU BCI speller: An SSVEP-based spelling system with dictionary support.
Martijn Schreuder, Johannes Höhne, Benjamin Blankertz, Stefan Haufe, Thorsten Dickhaus & Michael Tangermann. (2013) Optimizing event-related potential based brain–computer interfaces: a systematic evaluation of dynamic stopping methods. Journal of Neural Engineering 10:3, pages 036025.
Crossref
Srivas Chennu, Abdulmajeed Alsufyani, Marco Filetti, Adrian M Owen & Howard Bowman. (2013) The cost of space independence in P300-BCI spellers. Journal of NeuroEngineering and Rehabilitation 10:1, pages 82.
Crossref
N. Galea-Sevilla, Miriam España, Alberto Guillén & Ignacio Rojas. 2013. Advances in Computational Intelligence. Advances in Computational Intelligence 422 429 .
F. Schettini, F. Aloise, P. Arico, S. Salinari, D. Mattia & F. Cincotti. (2012) Control or no-control? reducing the gap between Brain-Computer Interface and classical input devices. Control or no-control? reducing the gap between Brain-Computer Interface and classical input devices.
F Aloise, F Schettini, P Aricò, S Salinari, F Babiloni & F Cincotti. (2012) A comparison of classification techniques for a gaze-independent P300-based brain–computer interface. Journal of Neural Engineering 9:4, pages 045012.
Crossref
A Riccio, D Mattia, L Simione, M Olivetti & F Cincotti. (2012) Eye-gaze independent EEG-based brain–computer interfaces for communication. Journal of Neural Engineering 9:4, pages 045001.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.